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A novel role for the choroid plexus in BMP-mediated inhibition of differentiation of cerebellar neural progenitors

机译:脉络丛在BMP介导的小脑神经祖细胞分化抑制中的新作用

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摘要

Cerebellar granule cells, the most abundant neurons in the mammalian brain, arise in the rhombic lip located at the roof of the brain's fourth ventricle. Bordering the rhombic lip is the choroid plexus, a non-neuronal structure, composed of blood vessels enveloped by epithelial cells. Here, we show a striking decrease in neural differentiation of rhombic lip-derived cells, which failed to extend neuritic processes and attenuate Math1 promoter activity, when co-cultured with choroid plexus cells. Moreover, a blocking antibody against BMP7, a morphogenetic protein expressed in the choroid plexus, blocked the inhibitory effect of the choroid plexus, whereas purified BMP7 mimicked this effect, demonstrating causal involvement of BMP. On the other hand, the BMP antagonist NBL1 promoted neurogenesis in rhombic lip cultures from Math1 null mice displaying arrested differentiation. Our data indicate that besides its secretory and barrier functions, the choroid plexus has a novel role in attenuating the differentiation of adjacent neural progenitors.
机译:小脑颗粒细胞是哺乳动物大脑中最丰富的神经元,位于大脑第四脑室顶部的菱形唇中。菱形唇的边缘是脉络丛,这是一种非神经元结构,由上皮细胞包裹的血管组成。在这里,我们显示出菱形唇来源的细胞的神经分化显着减少,当与脉络丛细胞共培养时,它未能延长神经过程并减弱Math1启动子活性。此外,针对BMP7(在脉络丛中表达的形态发生蛋白)的阻断抗体阻断了脉络丛的抑制作用,而纯化的BMP7模仿了这种作用,表明BMP的因果关系。另一方面,BMP拮抗剂NBL1在显示停滞分化的Math1无效小鼠的菱形唇培养物中促进了神经发生。我们的数据表明,脉络丛除了具有分泌和屏障功能外,还具有减轻邻近神经祖细胞分化的新作用。

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